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Optimization of fermentation conditions for squalene production by heterotrophic marine microalgae Schizochytrium mangrovei PQ6.

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dc.contributor.author Nguyen, Cam Ha
dc.contributor.author Hoang, Thi Minh Hien
dc.contributor.author Le, Thi Thom
dc.contributor.author Hoang, Thi Huong Quynh
dc.contributor.author Dang, Diem Hong
dc.date.accessioned 2026-09-11T02:41:05Z
dc.date.available 2026-09-11T02:41:05Z
dc.date.issued 2026-09-11
dc.identifier.issn 0866-7160
dc.identifier.uri http://tvhdh.vnio.org.vn:8080/xmlui/handle/123456789/21843
dc.description.abstract Squalene is currently known as chemopreventive agents in reducing the incident of coronary heart disease and cancer. It is also a strong antioxidant used extensively in the food and cosmetic industries. Microbial sources of squalene are being explored in recent years. The objective of this study was to investigate fermentation conditions of Schizochytrium mangrovei PQ6 for high squalene production in 30L bioreactor. Squalene production was influenced by various nutritional factors such as glucose, nitrogen, vitamins etc. and physical factors such as batch and fed-batch fermentation. Our study established that fed-batch fermentation with nitrogen source of 1.2% yeast extract and 6.4% monosodium glutamate and 0.4% mixture of vitamin B1, 6 and 12 as optimal culture condition for maximal production of squalene by S. mangrovei PQ6. In fed-batch culture, the glucose concentration feeding was added up to 22% into the culture at 36 h of fermentation. The maximum squalene production was achieved 6.9 ± 0.1 g/L at 48 h of fed-batch fermentation, respectively. The values were 2-3 times more than that in fed-batch cultivation without adding mixture of vitamins and 4-6 times more than that in batch cultivation. Our obtained results are a breakthrough for the development of alternative squalene source from heterotrophic marine microalgae of Schizochytrium mangrovei PQ6 species for health-promoting functional foods. vi,en
dc.language.iso en vi,en
dc.relation.ispartofseries Journal of Biology, 2017, 39(3): 349-358, DOI: https://doi.org/10.15625/0866-7160/v39n3.9130;
dc.subject biomass vi,en
dc.subject fed-batch culture vi,en
dc.subject glucose vi,en
dc.subject Schizochytrium mangrovei PQ6 vi,en
dc.subject squalene vi,en
dc.subject vitamins vi,en
dc.title Optimization of fermentation conditions for squalene production by heterotrophic marine microalgae Schizochytrium mangrovei PQ6. vi,en
dc.type Working Paper vi,en


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